Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Regulation of Rubisco activity in crassulacean acid metabolism plants: better late than never

Kate Maxwell, Howard Griffiths, Brent Helliker, Andrew Roberts, Richard P. Haslam, Jan Girnus, Wendy E. Robe and Anne M. Borland
29(6) pp.689 - 696


44 articles found in Crossref database.

Young Daughter Cladodes Affect CO2 Uptake by Mother Cladodes of Opuntia ficus-indica
PIMIENTA-BARRIOS EULOGIO, ZAÑUDO-HERNANDEZ JULIA, ROSAS-ESPINOZA VERONICA C., VALENZUELA-TAPIA AMARANTA, NOBEL PARK S.
Annals of Botany. 2005 95(2). p.363
Model approaches to advance crassulacean acid metabolism system integration
Chomthong Methawi, Griffiths Howard
The Plant Journal. 2020 101(4). p.951
How to resolve the enigma of diurnal malate remobilisation from the vacuole in plants with crassulacean acid metabolism?
Ceusters Nathalie, Borland Anne M., Ceusters Johan
New Phytologist. 2021 229(6). p.3116
Thirty Years of Photosynthesis 1974–2004 (2006)
Kelly Grahame J.
A system dynamics model integrating physiology and biochemical regulation predicts extent of crassulacean acid metabolism (CAM) phases
Owen Nick A., Griffiths Howard
New Phytologist. 2013 200(4). p.1116
The Calvin-Benson-Bassham cycle in C4 and Crassulacean acid metabolism species
Ludwig Martha, Hartwell James, Raines Christine A., Simkin Andrew J.
Seminars in Cell & Developmental Biology. 2024 155 p.10
Exploring molecular evolution of Rubisco in C3 and CAM Orchidaceae and Bromeliaceae
Hermida-Carrera Carmen, Fares Mario A., Font-Carrascosa Marcel, Kapralov Maxim V., Koch Marcus A., Mir Arnau, Molins Arántzazu, Ribas-Carbó Miquel, Rocha Jairo, Galmés Jeroni
BMC Evolutionary Biology. 2020 20(1).
Exploiting the potential of plants with crassulacean acid metabolism for bioenergy production on marginal lands
Borland A. M., Griffiths H., Hartwell J., Smith J. A. C.
Journal of Experimental Botany. 2009 60(10). p.2879
The photosynthetic plasticity of crassulacean acid metabolism: an evolutionary innovation for sustainable productivity in a changing world
Borland Anne M., Barrera Zambrano V. Andrea, Ceusters Johan, Shorrock Katherine
New Phytologist. 2011 191(3). p.619
Progress in Botany (2007)
Osmond Charles Barry
Encyclopedia of Plant and Crop Science (2004)
Cushman John C.
Diversification Slowdown in the Cirrhopetalum Alliance (Bulbophyllum, Orchidaceae): Insights From the Evolutionary Dynamics of Crassulacean Acid Metabolism
Hu Ai-Qun, Gale Stephan W., Liu Zhong-Jian, Fischer Gunter A., Saunders Richard M. K.
Frontiers in Plant Science. 2022 13
Crassulacean acid metabolism species differ in the contribution of C3 and C4 carboxylation to end of day CO2 fixation
van Tongerlo Evelien, Trouwborst Govert, Hogewoning Sander W., van Ieperen Wim, Dieleman Janneke A., Marcelis Leo F. M.
Physiologia Plantarum. 2021 172(1). p.134
Discrimination in the Dark. Resolving the Interplay between Metabolic and Physical Constraints to Phosphoenolpyruvate Carboxylase Activity during the Crassulacean Acid Metabolism Cycle
Griffiths Howard, Cousins Asaph B., Badger Murray R., von Caemmerer Susanne
Plant Physiology. 2007 143(2). p.1055
The Evolutionary Strategies that Shape Ecosystems (2012)
Competing carboxylases: circadian and metabolic regulation of Rubisco in C3 and CAM Mesembryanthemum crystallinum L.
DAVIES B. N., GRIFFITHS H.
Plant, Cell & Environment. 2012 35(7). p.1211
Crassulacean acid metabolism: plastic, fantastic
Dodd Antony N., Borland Anne M., Haslam Richard P., Griffiths Howard, Maxwell Kate
Journal of Experimental Botany. 2002 53(369). p.569
Climate‐resilient agroforestry: physiological responses to climate change and engineering of crassulacean acid metabolism (CAM) as a mitigation strategy
BORLAND ANNE M., WULLSCHLEGER STAN D., WESTON DAVID J., HARTWELL JAMES, TUSKAN GERALD A., YANG XIAOHAN, CUSHMAN JOHN C.
Plant, Cell & Environment. 2015 38(9). p.1833
Seasonal variation of photosynthesis and photosynthetic efficiency in Phalaenopsis
Pollet B., Steppe K., Dambre P., Van Labeke M. C., Lemeur R.
Photosynthetica. 2010 48(4). p.580
Progress in Botany (2008)
Niewiadomska Ewa, Borland Anne M.
Crassulacean acid metabolism: recent advances and future opportunities
Cushman John C.
Functional Plant Biology. 2005 32(5). p.375
CAM-related changes in chloroplastic metabolism of Mesembryanthemum crystallinum L.
Niewiadomska Ewa, Bilger Wolfgang, Gruca Magdalena, Mulisch Maria, Miszalski Zbigniew, Krupinska Karin
Planta. 2011 233(2). p.275
Opuntia spp.: Chemistry, Bioactivity and Industrial Applications (2021)
Khodaeiaminjan Mortaza, Nassrallah Amr Abdelmotagaly, Y. Kamal Khaled
Seasonal variation in photosynthesis and diel carbon balance under natural conditions in two Peperomia species that differ with respect to leaf anatomy1
Fondom Nicolas Y., Castro-Nava Sergio, Huerta Alfredo J.
The Journal of the Torrey Botanical Society. 2009 136(1). p.57
Synchronization of metabolic processes in plants with Crassulacean acid metabolism
Borland A. M., Taybi T.
Journal of Experimental Botany. 2004 55(400). p.1255
Contribution of carbon fixed by Rubisco and PEPC to phloem export in the Crassulacean acid metabolism plant Kalanchoë daigremontiana
Wild Birgit, Wanek Wolfgang, Postl Wolfgang, Richter Andreas
Journal of Experimental Botany. 2010 61(5). p.1375
Functional leaf anatomy of plants with crassulacean acid metabolism
Nelson Elizabeth A., Sage Tammy L., Sage Rowan F.
Functional Plant Biology. 2005 32(5). p.409
Evolution along the crassulacean acid metabolism continuum
Silvera Katia, Neubig Kurt M., Whitten W. Mark, Williams Norris H., Winter Klaus, Cushman John C.
Functional Plant Biology. 2010 37(11). p.995
Regulation of photosynthetic carbon metabolism in aquatic and terrestrial organisms by Rubisco activase, redox-modulation and CP12
Gontero Brigitte, Salvucci Michael E.
Aquatic Botany. 2014 118 p.14
Diurnal modulation of PEPCK decarboxylation activity impacts photosystem II light-energy use in a drought-induced CAM species
Pikart Filipe C., Matiz Alejandra, Alves Frederico R.R., Mercier Helenice
Environmental and Experimental Botany. 2020 173 p.104003
Growth and CO2 exchange in young Phalaenopsis orchids grown under different levels of humidity during the vegetative period
Lee Hyo Beom, Lim So Hyeon, Lim Nam Hyeon, An Seong Kwang, Kim Ki Sun
Horticulture, Environment, and Biotechnology. 2018 59(1). p.37
Photosynthesis in Pineapple (Ananas comosus comosus [L.] Merr) Measured Using PAM (Pulse Amplitude Modulation) Fluorometry
Ritchie Raymond James, Bunthawin Sakshin
Tropical Plant Biology. 2010 3(4). p.193
CAM‐physiology and carbon gain of the orchid Phalaenopsis in response to light intensity, light integral and CO2
Hogewoning Sander W., van den Boogaart Stefan A.J., van Tongerlo Evelien, Trouwborst Govert
Plant, Cell & Environment. 2021 44(3). p.762
Carbon stable isotopic composition of soluble sugars in Tillandsia epiphytes varies in response to shifts in habitat
Goode Laurel K., Erhardt Erik B., Santiago Louis S., Allen Michael F.
Oecologia. 2010 163(3). p.583
Progress in Botany (2005)
Kelly Grahame J.
Seasonal influences on carbohydrate metabolism in the CAM bromeliad Aechmea 'Maya': consequences for carbohydrate partitioning and growth
Ceusters J., Borland A. M., Ceusters N., Verdoodt V., Godts C., De Proft M. P.
Annals of Botany. 2010 105(2). p.301
Stomatal responses to CO2 during a diel Crassulacean acid metabolism cycle in Kalanchoe daigremontiana and Kalanchoe pinnata
VON CAEMMERER SUSANNE, GRIFFITHS HOWARD
Plant, Cell & Environment. 2009 32(5). p.567
From ancient genes to modern communities: the cellular stress response and the evolution of plant strategies
PIERCE S., VIANELLI A., CERABOLINI B.
Functional Ecology. 2005 19(5). p.763
Limitation of C3–CAM shift in the common ice plant under high irradiance
Gawronska K., Romanowska E., Miszalski Z., Niewiadomska E.
Journal of Plant Physiology. 2013 170(2). p.129
What does the RuBisCO activity tell us about a C3-CAM plant?
Gonçalves Ana Z., Latansio Sabrina, Detmann Kelly C., Marabesi Mauro A., Neto Antônio A.C., Aidar Marcos P.M., DaMatta Fábio M., Mercier Helenice
Plant Physiology and Biochemistry. 2020 147 p.172
Coupled carbon and water fluxes in CAM photosynthesis: modeling quantification of water use efficiency and productivity
Bartlett Mark S., Vico Giulia, Porporato Amilcare
Plant and Soil. 2014 383(1-2). p.111
Prospects and perspectives: inferring physiological and regulatory targets for CAM from molecular and modelling approaches
Chomthong Methawi, Griffiths Howard
Annals of Botany. 2023 132(4). p.583
Large-scale mRNA expression profiling in the common ice plant, Mesembryanthemum crystallinum, performing C3 photosynthesis and Crassulacean acid metabolism (CAM)
Cushman John C., Tillett Richard L., Wood Joshua A., Branco Joshua M., Schlauch Karen A.
Journal of Experimental Botany. 2008 59(7). p.1875
Leaf succulence determines the interplay between carboxylase systems and light use during Crassulacean acid metabolism in Kalanchoë species*
Griffiths Howard, Robe Wendy E., Girnus Jan, Maxwell Kate
Journal of Experimental Botany. 2008 59(7). p.1851

Committee on Publication Ethics


Abstract Export Citation Get Permission